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On the water abundance in the atmosphere of Jupiter

机译:关于木星大气中的水丰度

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摘要

In this paper, we attempt to place constraints on the possible global abundance of water and the average vertical cloud structure in the atmosphere of Jupiter. Based on the analysis of the Galileo Near-Infrared Mapping Spectrometer data, we find that in the atmosphere of Jupiter down to 6-8 bar, particularly in the North Equatorial Belt (NEB) region, the overall O/H ratio is compatible with one or more limes the solar value of this ratio. We also find that if water clouds form at the levels where they are expected from thermochemical equilibrium calculations for a given deep O/H ratio, then subsolar values of the O/H ratio cannot be reconciled with the analyzed data. However, these results are dependent on the model atmosphere, in particular the detailed vertical distribution of cloud opacity. Therefore, they should be considered with care, until new observations on the vertical cloud structure become available. The water vapor mixing ratio in the NEB displays large spatial variations. The same set of data yield subsaturated mixing ratios of ammonia to atmospheric levels of about 4 bar. This depletion of ammonia to great depths, as seen by the Galileo Probe in the hot spot where it entered, appears to be a common phenomenon in the entire NEB.
机译:在本文中,我们试图对木星大气中可能存在的全球水量和平均垂直云结构施加约束。通过对伽利略近红外光谱仪数据的分析,我们发现在木星大气中,低至6-8 bar,特别是在北赤道带(NEB)区域,总体O / H比与1或更多的石灰使该比例的太阳值变大。我们还发现,如果在给定的深层O / H比下,水云形成于热化学平衡计算所预期的水平,则O / H比的太阳太阳值无法与分析数据相吻合。但是,这些结果取决于模型大气,特别是云不透明度的详细垂直分布。因此,应谨慎考虑它们,直到获得有关垂直云结构的新观测值为止。 NEB中的水蒸气混合比显示出较大的空间变化。同一组数据得出的氨与大气水平的饱和混合比约为4 bar。伽利略探测器在其进入的热点中看到,氨的深度消耗很大,这似乎是整个NEB的普遍现象。

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